Showing 1 - 11 results of 11 for search 'Kinetic Ballooning model', query time: 0.08s Refine Results
  1. 1

    Gyrokinetic simulation of full electromagnetic kinetic ballooning mode in tokamaks by Y. Shen, J.Q. Dong, J. Li, M.K. Han, H.D. He, X.R. Zhang, J.Y. Liu

    Published 2025-01-01
    “…Kinetic ballooning mode (KBM) was simulated and studied numerically by means of a full electromagnetic theory that retains all three gyroscopic fields: $\tilde{\phi}$ , $\tilde{A_{||}}$ and $\tilde{B_{||}}$ . …”
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  2. 2

    Effects of Kinetic Ballooning Modes on the electron distribution function in the core of high-performance tokamak plasmas by S. Mazzi, G. Giruzzi, Y. Camenen, R. Dumont, M. Fontana, E. de la Luna, F.P. Orsitto, L. Senni, K. Aleynikova, S. Brunner, B.J. Frei, J. Garcia, A. Zocco, D. Frigione, L. Garzotti, F. Rimini, D. van Eester, JET Contributors, the EUROfusion Tokamak Exploitation Team

    Published 2024-01-01
    “…In this work, detailed gyrokinetic analyses unveil the unexplored wave-particle interaction between electrons and the Kinetic Ballooning Modes (KBMs) in tokamak plasmas. …”
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  3. 3

    Computational modeling of drug-eluting balloons in peripheral artery disease: Mechanisms, optimization, and translational insights by Mohammed A. AboArab, Vassiliki T. Potsika, Dimitrios S. Pleouras, Dimitrios I. Fotiadis

    Published 2025-01-01
    “…CFD-based mass transfer models capture flow-driven drug dispersion and washout dynamics, whereas FEA links balloon mechanics, plaque morphology, and drug penetration efficiency. …”
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    Development of a data-driven neural network model for electron thermal transport in NSTX by H. Chung, C.Y. Lee, G.J. Choi, S.M. Kaye, B.P. LeBlanc, J.W. Berkery, Y.-S. Na

    Published 2025-01-01
    “…Additionally, parameter scans were performed on test discharges known to exhibit specific turbulent modes, such as microtearing mode, trapped electron mode, kinetic ballooning mode, and electron temperature gradient mode. …”
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  7. 7

    Modelling chemistry and biology after implantation of a drug-eluting stent. Part Ⅱ: Cell proliferation by Adam Peddle, William Lee, Tuoi Vo

    Published 2018-09-01
    “…The aim of a drug eluting stent is to prevent restenosis of arteries following percutaneous balloon angioplasty. A long term goal of research in this area is to use modelling to optimise the design of these stents to maximise their efficiency. …”
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  8. 8

    The linear electromagnetic gyrokinetic global simulation by using the numerical Lie-transform code by Guodong Zhang, Jinxiang You, Zihao Wang, Tiannan Wu, Yuefeng Qiu, Lu Wang, Shaojie Wang

    Published 2024-12-01
    “…The simulation results including the real frequency, linear growth rate, and mode structures of the ion temperature gradient mode and the trapped electron mode as well as the kinetic ballooning mode from NLT are consistent with those from previous Eulerian and particle in cell codes. …”
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  9. 9

    The role of ion-scale micro-turbulence in pedestal width of the DIII-D wide-pedestal QH mode by Zeyu Li, Xi Chen, Xiang Jian, Darin Ernst, Xueqiao Xu, R.J. Groebner, Huiqian Wang, T.H. Osborne, K.H. Burrell, the DIII-D Team

    Published 2024-01-01
    “…The low-edge rotation, intrinsically ELM-free, and improved confinement wide-pedestal quiescent H-mode (QH-mode), discovered in DIII-D tokamak, has pedestal widths exceeding the EPED-kinetic-ballooning mode (KBM) model scaling typically by at least 25%. …”
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  10. 10

    Atmospheric antideuteron flux within a dynamical coalescence approach by Jie Pu, Xin Li, Kai-Jia Sun, Chun-Wang Ma, Lie-Wen Chen

    Published 2025-08-01
    “…In this study, antideuteron production is modeled using a multiphase transport model (AMPT) coupled with a dynamical coalescence model. …”
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  11. 11

    Vertical profiles of liquid water content in fog layers during the SOFOG3D experiment by T. Costabloz, F. Burnet, C. Lac, P. Martinet, J. Delanoë, S. Jorquera, M. Fathalli

    Published 2025-06-01
    “…<p>A better understanding of the fog life cycle is required to improve forecasts by numerical weather prediction models and to reduce impacts of fog on human activities. …”
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